Handbook of Nanomaterials for Industrial Applications

Handbook of Nanomaterials for Industrial Applications
Title Handbook of Nanomaterials for Industrial Applications PDF eBook
Author Chaudhery Mustansar Hussain
Publisher Elsevier
Pages 1143
Release 2018-07-19
Genre Science
ISBN 012813352X

Download Handbook of Nanomaterials for Industrial Applications Book in PDF, Epub and Kindle

Handbook of Nanomaterials for Industrial Applications explores the use of novel nanomaterials in the industrial arena. The book covers nanomaterials and the techniques that can play vital roles in many industrial procedures, such as increasing sensitivity, magnifying precision and improving production limits. In addition, the book stresses that these approaches tend to provide green, sustainable solutions for industrial developments. Finally, the legal, economical and toxicity aspects of nanomaterials are covered in detail, making this is a comprehensive, important resource for anyone wanting to learn more about how nanomaterials are changing the way we create products in modern industry. - Demonstrates how cutting-edge developments in nanomaterials translate into real-world innovations in a range of industry sectors - Explores how using nanomaterials can help engineers to create innovative consumer products - Discusses the legal, economical and toxicity issues arising from the industrial applications of nanomaterials

Spectroscopy of Complex Oxide Interfaces

Spectroscopy of Complex Oxide Interfaces
Title Spectroscopy of Complex Oxide Interfaces PDF eBook
Author Claudia Cancellieri
Publisher Springer
Pages 326
Release 2018-04-09
Genre Technology & Engineering
ISBN 3319749897

Download Spectroscopy of Complex Oxide Interfaces Book in PDF, Epub and Kindle

This book summarizes the most recent and compelling experimental results for complex oxide interfaces. The results of this book were obtained with the cutting-edge photoemission technique at highest energy resolution. Due to their fascinating properties for new-generation electronic devices and the challenge of investigating buried regions, the book chiefly focuses on complex oxide interfaces. The crucial feature of exploring buried interfaces is the use of soft X-ray angle-resolved photoemission spectroscopy (ARPES) operating on the energy range of a few hundred eV to increase the photoelectron mean free path, enabling the photons to penetrate through the top layers – in contrast to conventional ultraviolet (UV)-ARPES techniques. The results presented here, achieved by different research groups around the world, are summarized in a clearly structured way and discussed in comparison with other photoemission spectroscopy techniques and other oxide materials. They are complemented and supported by the most recent theoretical calculations as well as results of complementary experimental techniques including electron transport and inelastic resonant X-ray scattering.

Handbook of Laser Micro- and Nano-Engineering

Handbook of Laser Micro- and Nano-Engineering
Title Handbook of Laser Micro- and Nano-Engineering PDF eBook
Author KOJI SUGIOKA.
Publisher
Pages
Release 2019
Genre Lasers in engineering
ISBN 9783319695372

Download Handbook of Laser Micro- and Nano-Engineering Book in PDF, Epub and Kindle

This handbook provides a comprehensive review of the entire field of laser micro and nano processing, including not only a detailed introduction to individual laser processing techniques but also the fundamentals of laser-matter interaction and lasers, optics, equipment, diagnostics, as well as monitoring and measurement techniques for laser processing. Consisting of 11 sections, each composed of 4 to 6 chapters written by leading experts in the relevant field. Each main part of the handbook is supervised by its own part editor(s) so that high-quality content as well as completeness are assured. The book provides essential scientific and technical information to researchers and engineers already working in the field as well as students and young scientists planning to work in the area in the future. Lasers found application in materials processing practically since their invention in 1960, and are currently used widely in manufacturing. The main driving force behind this fact is that the lasers can provide unique solutions in material processing with high quality, high efficiency, high flexibility, high resolution, versatility and low environmental load. Macro-processing based on thermal process using infrared lasers such as CO2 lasers has been the mainstream in the early stages, while research and development of micro- and nano-processing are becoming increasingly more active as short wavelength and/or short pulse width lasers have been developed. In particular, recent advances in ultrafast lasers have opened up a new avenue to laser material processing due to the capabilities of ultrahigh precision micro- and nanofabrication of diverse materials. This handbook is the first book covering the basics, the state-of-the-art and important applications of the dynamic and rapidly expanding discipline of laser micro- and nanoengineering. This comprehensive source makes readers familiar with a broad spectrum of approaches to solve all relevant problems in science and technology. This handbook is the ultimate desk reference for all people working in the field.

Integration of Functional Oxides with Semiconductors

Integration of Functional Oxides with Semiconductors
Title Integration of Functional Oxides with Semiconductors PDF eBook
Author Alexander A. Demkov
Publisher Springer Science & Business Media
Pages 284
Release 2014-02-20
Genre Technology & Engineering
ISBN 146149320X

Download Integration of Functional Oxides with Semiconductors Book in PDF, Epub and Kindle

This book describes the basic physical principles of the oxide/semiconductor epitaxy and offers a view of the current state of the field. It shows how this technology enables large-scale integration of oxide electronic and photonic devices and describes possible hybrid semiconductor/oxide systems. The book incorporates both theoretical and experimental advances to explore the heteroepitaxy of tuned functional oxides and semiconductors to identify material, device and characterization challenges and to present the incredible potential in the realization of multifunctional devices and monolithic integration of materials and devices. Intended for a multidisciplined audience, Integration of Functional Oxides with Semiconductors describes processing techniques that enable atomic-level control of stoichiometry and structure and reviews characterization techniques for films, interfaces and device performance parameters. Fundamental challenges involved in joining covalent and ionic systems, chemical interactions at interfaces, multi-element materials that are sensitive to atomic-level compositional and structural changes are discussed in the context of the latest literature. Magnetic, ferroelectric and piezoelectric materials and the coupling between them will also be discussed. GaN, SiC, Si, GaAs and Ge semiconductors are covered within the context of optimizing next-generation device performance for monolithic device processing.

Metal Oxide-Based Thin Film Structures

Metal Oxide-Based Thin Film Structures
Title Metal Oxide-Based Thin Film Structures PDF eBook
Author Nini Pryds
Publisher
Pages 562
Release 2017
Genre
ISBN 9780128104187

Download Metal Oxide-Based Thin Film Structures Book in PDF, Epub and Kindle

Optical Properties of Semiconductor Nanostructures

Optical Properties of Semiconductor Nanostructures
Title Optical Properties of Semiconductor Nanostructures PDF eBook
Author Marcin L. Sadowski
Publisher Springer Science & Business Media
Pages 470
Release 2000-06-30
Genre Science
ISBN 9780792363163

Download Optical Properties of Semiconductor Nanostructures Book in PDF, Epub and Kindle

Optical methods for investigating semiconductors and the theoretical description of optical processes have always been an important part of semiconductor physics. Only the emphasis placed on different materials changes with time. Here, a large number of papers are devoted to quantum dots, presenting the theory, spectroscopic investigation and methods of producing such structures. Another major part of the book reflects the growing interest in diluted semiconductors and II-IV nanosystems in general. There are also discussions of the fascinating field of photonic crystals. `Classical' low dimensional systems, such as GsAs/GaAlAs quantum wells and heterostructures, still make up a significant part of the results presented, and they also serve as model systems for new phenomena. New materials are being sought, and new experimental techniques are coming on stream, in particular the combination of different spectroscopic modalities.

Ordering Phenomena in Rare-Earth Nickelate Heterostructures

Ordering Phenomena in Rare-Earth Nickelate Heterostructures
Title Ordering Phenomena in Rare-Earth Nickelate Heterostructures PDF eBook
Author Matthias Hepting
Publisher Springer
Pages 159
Release 2017-06-28
Genre Technology & Engineering
ISBN 3319605313

Download Ordering Phenomena in Rare-Earth Nickelate Heterostructures Book in PDF, Epub and Kindle

This thesis presents an experimental study of ordering phenomena in rare-earth nickelate-based heterostructures by means of inelastic Raman light scattering and elastic resonant x-ray scattering (RXS). Further, it demonstrates that the amplitude ratio of magnetic moments at neighboring nickel sites can be accurately determined by RXS in combination with a correlated double cluster model, and controlled experimentally through structural pinning of the oxygen positions in the crystal lattice. The two key outcomes of the thesis are: (a) demonstrating full control over the charge/bond and spin order parameters in specifically designed praseodymium nickelate heterostructures and observation of a novel spin density wave phase in absence of the charge/bond order parameter, which confirms theoretical predictions of a spin density wave phase driven by spatial confinement of the conduction electrons; and (b) assessing the thickness-induced crossover between collinear and non-collinear spin structures in neodymium nickelate slabs, which is correctly predicted by drawing on density functional theory.